...
首页> 外文期刊>IEICE Transactions on Electronics >Energy Efficient Approximate Storing of Image Data for MTJ Based Non-Volatile Flip-Flops and MRAM
【24h】

Energy Efficient Approximate Storing of Image Data for MTJ Based Non-Volatile Flip-Flops and MRAM

机译:基于MTJ的非易失性触发器和MRAM的图像数据的能量有效近似存储

获取原文
获取原文并翻译 | 示例
           

摘要

A non-volatile memory (NVM) employing MTJ has a lot of strong points such as read/write performance, best endurance and operating-voltage compatibility with standard CMOS. However, it consumes a lot of energy when writing the data. This becomes an obstacle when applying to battery-operated mobile devices. To solve this problem, we propose an approach to augment the capability of the precision scaling technique for the write operation in NVM. Precision scaling is an approximate computing technique to reduce the bit width of data (i.e. precision) for energy reduction. When writing image data to NVM with the precision scaling, the write energy and the image quality are changed according to the write time and the target bit range. We propose an energy-efficient approximate storing scheme for non-volatile flip-flops and a magnetic randomaccess memory (MRAM) that allows us to write the data by optimizing the bit positions to split the data and the write time for each bit range. By using the statistical model, we obtained optimal values for the write time and the targeted bit range under the trade-off between the write energy reduction and image quality degradation. Simulation results have demonstrated that by using these optimal values the write energy can be reduced up to 50% while maintaining the acceptable image quality. We also investigated the relationship between the input images and the output image quality when using this approach in detail. In addition, we evaluated the energy benefits when applying our approach to nine types of image processing including linear filters and edge detectors. Results showed that the write energy is reduced by further 12.5% at the maximum.
机译:使用MTJ的非易失性存储器(NVM)具有大量的强点,例如读/写性能,最佳耐用性和与标准CMOS的工作电压兼容性。但是,在编写数据时,它会消耗大量的能量。当施加到电池操作的移动设备时,这成为障碍。为了解决这个问题,我们提出了一种增加了一种增强了NVM中的写入操作的精密缩放技术的能力。精确缩放是一种近似的计算技术,以减少能量减少的数据的比特宽度(即精度)。当用精度缩放将图像数据写入NVM时,根据写入时间和目标位范围改变写入能量和图像质量。我们提出了一种用于非易失性触发器的能量有效的近似存储方案和磁随机性存储器(MRAM),其允许我们通过优化位位置来分割数据和每个位范围的写入时间来编写数据。通过使用统计模型,我们在写入能量减少和图像质量下降之间的权衡下获得了写入时间和目标位范围的最佳值。模拟结果表明,通过使用这些最佳值,写入能量可以减少高达50%,同时保持可接受的图像质量。我们还详细使用此方法时还研究了输入图像和输出图像质量之间的关系。此外,我们在将我们的方法应用于九种图像处理时,我们评估了能量效益,包括线性滤波器和边缘探测器。结果表明,在最大值下,写入能量进一步降低了12.5%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号